Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Chemistry, Catalysis, Ruthenium, Electrolyte, Inorganic chemistry, and Lignin.
Ultra‐Dense Supported Ruthenium Oxide Clusters via Directed Ion Exchange for Efficient Valorization of 5‐Hydroxymethylfurfural
Unveiling the Cation Dependence in Alkaline Hydrogen Evolution by Differently‐Charged Ruthenium/Molybdenum Sulfide Hybrids
Nickel/Lanthanide Oxide Heterostructures for Sulfide-Resistant Hydrogen Evolution Electrocatalysis
Preparation of hydrophobic and lipophilic carboxymethyl cellulose composite aerogel using ferrous ion/ persulfate and its directed oxidation for oil–water emulsion separation
Efficient Separation of Poplar Lignin Using a New Carboxylic Acid‐Based Deep Eutectic Solvents – Choline Chloride/Malonic Acid
Optimizing lignin demethylation using a novel proton- based ionic liquid: 1, 2-propanediamine/glycolic acid catalyst
Ligand Hybridization for Electro‐reforming Waste Glycerol into Isolable Oxalate and Hydrogen
Electrode/Electrolyte Synergy for Concerted Promotion of Electron and Proton Transfers toward Efficient Neutral Water Oxidation
Cotreatment with Aspirin and Azole Drugs Increases Sensitivity of Candida albicans in vitro
Aspirin and verapamil increase the sensitivity of Candida albicans to caspofungin under planktonic and biofilm conditions